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The increasing number of second language learners in classrooms all around the world has required teachers to adapt their teaching methods and materials to the various learners’ needs. Second language learners in particular need specific learning strategies, which not only aim at helping them understand the linguistic structure of the language of instruction, but also enable them to remember and comprehend the many different words in this “foreign” language. For second language learners, developing reading skills and improving language abilities need to go hand in hand independent of the language. This article presents suggestions for reading lessons emphasizing vocabulary for both first and second language learners of various linguistic backgrounds. These suggestions are especially useful for reading lessons in mainstream second and third grade classrooms. Approaches to vocabulary building are discussed with particular focus on aspects to be considered for vocabulary selection (e.g. linguistic aspects); followed by recommendations on the instruction of the selected vocabulary. All the presented suggestions are based on materials developed in the context of a project in Austria, hence in a German speaking environment. Applicability of these suggestions for other languages is emphasized.  相似文献   
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Understanding energy with a focus on sustainable development requires further knowledge beyond traditional conceptual understanding. This paper presents the result from one main investigation and two smaller follow-up studies. The main study (step 1) consists of an interpreting, iterative analysis of statements made by experts on contents for physics education on energy with focus on sustainable energy systems gathered from a questionnaire, which results in subject-specific contents for physics teaching presented as a category system of objectives. The categories from step 1 are used as means for analyses in steps 2 and 3, which involve the study of educational material and one physics class. The results show that the content of physics for upper secondary, in order for students to reach insight, should comprise certain physical concepts and relations not only in ‘limited contexts’ but also in relation to greater contextual connections, in which problematisation and insight in solutions for the future is necessary. These parts should have a similar weight according to the statements of the experts. This is not to be found in either the typical educational material (textbooks) or in one physics class, which has been studied.  相似文献   
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The influence of a 12-week-proprioceptive training on functional ankle stability was investigated in young speed skaters. Twenty-eight speed skaters were randomly divided into an intervention (n = 14) and into a control group (n = 14). A 15-min circle training was performed 5 times per week over a 12-week period. Measurements were taken prior to the training, after 6 and 12 weeks of training. Kinaesthesia was evaluated with the Isomed2000 in all movements of the ankle joint. Dynamic balance was tested with the Biodex Stability System at the stable level 8 and at the unstable level 2, measuring the overall stability index, the anterior/posterior and the medial/lateral scores. Static single-leg stance was evaluated using the Kistler force platform. Kinaesthesia of the intervention group improved significantly for plantarflexion of the right foot (P = 0.001) after 12 weeks. Dynamic balance showed significant differences in the intervention group after 12 weeks in comparison with the first measurement for each foot in the overall stability index, the anterior/posterior and the medial/lateral scores (P ≤ 0.017, respectively) at the unstable level 2. Functional ankle stability improved in terms of dynamic balance after 12 weeks of proprioceptive training. Therefore, inclusion of proprioceptive exercises in the daily training programme is recommended for young speed skaters.  相似文献   
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Creativity and communication processes in engineering education have become more and more necessary in highly complex structures such as technological networks and ‘virtual’ reality. These issues also include an educational challenge for university: all education for the future has to be based on experiencing reality. A new socio‐technical approach describes the engineering profession in all aspects beside technology, such as tasks, views, organizational structures or cooperation. Therefore, university and higher education have to change into self‐similar structures to support the learning of complexity in real life. The experiences of the Department of Computer Science in Mechanical Engineering at the University of Technology in Aachen, as a socio‐technical, self‐similar and creative system, show such learning processes of students (and staff) in undergraduate education, research and organizational structures.  相似文献   
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